Wedge-Bolt+

Transcription

Wedge-Bolt+
®
Wedge-Bolt +
Wedge-Bolt+
PRODUCT INFORMATION
Screw Anchor
SECTION CONTENTS
PRODUCT DESCRIPTION
The Wedge-Bolt+ anchor is a one piece, heavy duty screw anchor with a finished hex
head. It is simple to install, easy to identify and fully removable. The Wedge-Bolt+ has
features and benefits that make it well suited for many applications. The steel threads
along the anchor body tap into the hole during installation to provide keyed engagement.
Suitable base materials include normal-weight concrete, structural sand-lightweight
concrete, concrete over steel deck, concrete masonry and solid clay brick. The anchor is
designed for structural loading in cracked and uncracked concrete.
Page No.
General Information .................... 1
Material Specifications................ 1
Installation Specifications ........... 2
Installation Instructions............... 3
SD Performance Data .....................4
SD Factored Design Strength...........6
GENERAL APPLICATIONS AND USES
ASD Performance Data...................8
• Racking, shelving and material handling
• Support ledgers and temporary attachments
• Interior applications/low level corrosion environment
• Retrofits, repairs and maintenance
• Fencing and railing
• Seismic and wind loading
Masonry Performance Data.........11
Design Critiera ..............................14
Ordering Information ...................16
FEATURES AND BENEFITS
+ Consistent performance in high and low strength concrete
+ Anchor can be installed through standard fixture holes
+ Wedge-bit size is matched to the nominal anchor diameter
+ Diameter, length and identifying marking stamped on head of each anchor
+ Fast installation with a powered impact wrench
+ One-piece, finished head design eliminates improper assembly or missing components
APPROVALS AND LISTINGS1
International Code Council, Evaluation Service (ICC-ES), ESR-2526 for concrete.
International Code Council, Evaluation Service (ICC-ES), ESR-1678 for concrete masonry.
Code compliant with the 2009 IBC, 2009 IRC, 2006 IBC, 2006 IRC, 2003 IBC, 2003 IRC and 1997 UBC
Tested in accordance with ACI 355.2 and ICC-ES AC193 for use in structural concrete under
the design provisions of ACI 318 (Strength Design method using Appendix D)
Evaluated and qualified by an accredited independent testing laboratory for recognition in
cracked and uncracked concrete including seismic and wind loading (Category 1 anchors)
Evaluated and qualified by an accredited independent testing labortatory for reliability
against brittle failure, e.g. hydrogen embrittlement
Tested in accordance with ASTM E488 and AC106 criteria
Wedge-Bolt+
ANCHOR MATERIALS
Zinc plated carbon steel body
and hex washer head or mechanically
galvanized carbon steel body and hex
washer head
ANCHOR SIZE RANGE (TYP.)
1/4” diameter (uncracked concrete)
3/8” diameter through 3/4” diameter
SUITABLE BASE MATERIALS
Normal-weight concrete
Structural sand-lightweight concrete
Concrete over steel deck
GUIDE SPECIFICATIONS
Grout-filled concrete masonry (CMU)
CSI Divisions: 03151-Concrete Anchoring, 04081 Masonry Anchoring and 05090-Metal Fastenings. Solid clay brick
Screw anchors shall be Wedge-Bolt+ as supplied by Powers Fasteners, Inc., Brewster, NY. Anchors
shall be installed in accordance with published instructions and the Authority Having Jurisdiction.
MATERIAL SPECIFICATIONS
Anchor component
Specification
Anchor body and hex washer head
Case hardened low carbon steel
Plating
Zinc plating according to ASTM B 633, SC1, Type III (Fe/Zn 5)
Minimum plating requirement for Mild Service Condition
Mechanically Galvanized Zinc plating according to ASTM B 695,
Class 55
This Product Available In
Powers Design Assist
Real Time Anchor Design Software
www.powersdesignassist.com
1. Approvals and listings pending for mechanically galvanized Wedge-Bolt+ in concrete.
g
1
www.powers.com
Canada: (905) 673-7295 or (514) 631-4216
Powers USA: (800) 524-3244 or (914) 235-6300
®
Wedge-Bolt +
PRODUCT INFORMATION
INSTALLATION SPECIFICATIONS
Installation Table for Wedge-Bolt+ (Design Provisions of ACI 318 Appendix D)
Nominal Anchor Size
Notation
Units
Nominal anchor diameter
do
in.
(mm)
Minimum diameter of hole clearance
in fixture
dh
in.
(mm)
Nominal drill bit diameter
dbit
in.
Wedge-bit tolerance range
-
in.
hnom
1.100
(28)
3-1/4
(83)
2-1/2
(64)
1-1/2
(38)
2
(51)
2-1/4
(57)
2-1/4
(57)
Anchor Property/Setting Information
1/4”
3/8”
1/2”
5/8”
0.250
(6.4)
0.375
(9.5)
0.500
(12.7)
0.625
(15.9)
9/16
(14.3)
1/2
Wedge-bit
0.490
to
0.495
11/16
(17.5)
5/8
Wedge-bit
0.600
to
0.605
13/16
(20.6)
3/4
Wedge-bit
300
(407)
4-3/8
(111)
3.100
(79)
7
(178)
5
5
4
(102) (127) (127)
1-3/4 1-3/4
4
(102) (44) (44)
3
5
3-3/4
(76)
(127) (95)
5
4
(127)
(102)
5
4
(127)
(102)
350
(475)
4-1/4
(108)
2.910
(74)
7
(178)
6
(152)
1-3/4
(44)
4-1/2
(114)
5
(127)
5
(127)
400
(542)
7/16
5/16
(11.1)
(7.9)
3/8
1/4
Wedge-bit Wedge-bit
0.255
to
0.259
1-3/4
(44)
0.385
to
0.389
3/4”
0.750
(19.1)
0.720
to
0.725
Minimum overall anchor length
lanch
in.
(mm)
in.
(mm)
in.
(mm)
in.
(mm)
in.
(mm)
in.
(mm)
in.
(mm)
in.
(mm)
Maximum impact wrench power (torque)
Tscrew
ft.-lb.
(N-m)
115
(156)
2-1/8
(54)
1.425
(36)
4
(102)
2-3/4
(70)
1-3/4
(44)
2-1/2
(64)
2-1/2
(64)
2-1/2
(64)
245
(332)
Impact wrench socket size
-
in.
7/16
9/16
3/4
15/16
1-1/8
Head height
-
in.
7/32
21/64
7/16
1/2
19/32
Minimum nominal embedment depth
Effective embedment
Minimum concrete member thickness1
hef
hmin
Critical edge distance1
cac
Minimum edge distance1
cmin
Minimum spacing distance1
smin
Minimum hole depth1
ho
2-1/2
(64)
1.650
(42)
5
(127)
3-1/4
(83)
1-3/4
(44)
3-1/2
(89)
3
(76)
3
(76)
3-1/4
(83)
2.145
(55)
6
(152)
3-1/2
(89)
2.500
(64)
6
(152)
4-1/2
(114)
1-3/4
(44)
2-1/2
(64)
4
(102)
4
(102)
1. For installations through the soffit of steel deck into concrete, see the installation detail. Anchors in the lower flute may be installed with a maximum 1-inch offset in either direction
from center of the flute. In addition, anchors shall have an axial spacing along the flute equal to the greater of 3hef or 1.5 times the flute width.
Wedge-Bolt+ Anchor Detail
Hex Head Marking
Legend
Diameter and Length Identification Mark
‘+’ Symbol = Strength Design Compliant Anchor
(see ordering information)
Matched Tolerance System
Hex
Washer
Head
Blue Tip
Marking
Serrated
Underside
Dual Thread
Profile
Blue Wedge-bit
Designed and tested as a system for consistency and reliability
g
Powers USA: (800) 524-3244 or (914) 235-6300
Canada: (905) 673-7295 or (514) 631-4216
www.powers.com
2
®
PRODUCT INFORMATION
Wedge-Bolt +
INSTALLATION INSTRUCTIONS
Installation Instructions for Wedge-Bolt+
1.) Using the proper Wedgebit size, drill a hole into the
base material to the required
depth. The tolerances of the
carbide Wedge-bit used
must meet the requirements
of the published Wedge-bit
range.
2.) Remove dust and
debris from the hole.
3.) Select a powered impact
wrench that does not exceed
the maximum torque,Tscrew ,
for the selected anchor
diameter. Attach an
appropriate sized hex socket to
the impact wrench. Mount the
screw anchor head into the
socket.
4.) Drive the anchor through
the fixture and into the hole
until the head of the anchor
comes into contact with the
fixture. The anchor should
be snug after installation. Do
not spin the hex socket off
the anchor to disengage.
Installation Detail for Wedge-Bolt+ Installed Through Soffit of Steel Deck into Concrete
g
3
www.powers.com
Canada: (905) 673-7295 or (514) 631-4216
Powers USA: (800) 524-3244 or (914) 235-6300
®
Wedge-Bolt +
PRODUCT INFORMATION
SD PERFORMANCE DATA
Tension Design Information (For use with load combinations taken from ACI 318 Section 9.2)1,2,3
Design Characteristic
Anchor category
Nominal embedment depth
Notation
Units
1, 2 or 3
hnom
Minimum specified ultimate strength
futa
Effective tensile stress area
Ase
Steel strength in tension
Nsa
φ
Reduction factor for steel strength3
1/4”
3/8”
-
1
1
in.
1-3/4
2-1/8
STEEL STRENGTH IN TENSION4
100.0
ksi
100.0
(N/mm2)
(990)
(990)
2
0.103
0.044
in
(2.66)
(1.10)
(mm2)
4,400
10,300
lb
(19.6)
(45.8)
(kN)
Nominal Anchor Size
1/2”
5/8”
1
1
3-1/2
2-1/2
1
4-3/8
3-1/4
100.0
(990)
0.249
(6.41)
24,900
(110.7)
100.0
(990)
0.168
(4.28)
16,800
(74.7)
-
3/4”
4-1/4
100.0
(990)
0.371
(9.53)
37,100
(164.9)
0.65
CONCRETE BREAKOUT STRENGTH IN TENSION8
Effective embedment
Effectiveness factor for uncracked concrete
Effectiveness factor for cracked concrete
1.100
(28)
1.425
(36)
kuncr
-
24
24
24
24
24
kcr
-
Not
Applicable
17
17
17
17
-
1.0
1.0
See note 5 See note 5
2-1/2
2-3/4
(64)
(70)
1.0
See note 5
4-1/2
3-1/4
(114)
(83)
1.0
See note 5
5
4
(127)
(102)
1.0
See note 5
6
(152)
c,N
cac
Critical edge distance
Reduction factor for concrete breakout strength3
2.145
(54)
in.
(mm)
ψ
Modification factor for cracked and
uncracked concrete5
2.500
(64)
hef
φ
in.
(mm)
1.650
(42)
-
3.100
(79)
2.910
(74)
0.65 (Condition B)
PULLOUT STRENGTH IN TENSION (NON-SEISMIC APPLICATIONS)8
Characteristic pullout strength,
uncracked concrete (2,500 psi)6
Np,uncr
lb
(kN)
Characteristic pullout strength,
cracked concrete (2,500 psi)6
Np,cr
lb
(kN)
Reduction factor for pullout strength3
φ
See note 7 See note 7 See note 7 See note 7 See note 7 See note 7 See note 7
No
Data
See note 7 See note 7
-
2,965
(13.2)
3,085
(13.7)
4,290
(19.1)
See note 7
4,290
(19.1)
4,270
(19.0)
0.65 (Condition B)
PULLOUT STRENGTH IN TENSION FOR SEISMIC APPLICATIONS8
Characteristic pullout strength,
seismic 6, (2,500 psi)9
Reduction factor for pullout strength3
Neq
φ
lb
(kN)
No
Data
1,085
(4.8)
1,350
(6.0)
-
2,520
(11.2)
3,085
(13.7)
0.65 (Condition B)
PULLOUT STRENGTH IN TENSION FOR STRUCTUAL SAND-LIGHTWEIGHT AND NORMAL-WEIGHT CONCRETE OVER STEEL DECK
4,095
2,480
3,760
2,010
Characteristic pullout strength,
Not
Not
lb
Np,deck,uncr
Applicable
Applicable
(18.2)
(11.0)
(16.7)
(8.9)
(kN)
uncracked concrete over steel deck10
Characteristic pullout strength,
cracked concrete over steel deck10
Reduction factor for pullout strength3
Np,deck,cr
φ
lb
(kN)
-
Not
Applicable
1,425
(6.3)
3,045
(13.5)
1,755
(7.8)
2,665
(11.9)
Not
Applicable
0.65 (Condition B)
1. The data in this table is intended to be used with the design provisions of ACI 318 Appendix D; for anchors resisting seismic load combinations the additional requirements of ACI 318 D.3.3 shall apply.
2. Installation must comply with published instructions and details.
3. All values of φ were determined from the load combinations of ACI 318 Section 9.2. If the load combinations of Appendix C are used, the appropriate value of φ must be
determined in accordance with ACI 318 D.4.5. For reinforcement that meets ACI 318 Appendix D requirements for Condition A, see ACI 318 D.4.4 for the
appropriate φ factor.
4. The Wedge-Bolt+ is considered a brittle steel element as defined by ACI 318 D.1.
5. For all design cases use ψc,N = 1.0. Select appropriate effectiveness factor for cracked concrete (kcr) or uncracked concrete (kuncr).
6. For all design cases use ψc,P = 1.0. For concrete compressive strength greater than 2,500 psi, Npn = (pullout strength value from table)*(specified concrete
compressive strength/2500)0.5.
7. Pullout strength does not control design of indicated anchors. Do not calculate pullout strength for indicated anchor size and embedment.
8. Reported values for characteristic pullout strength in tension for seismic applications are based on test results per ACI 355.2, Section 9.5.
9. Anchors are permitted to be used in structural sand-lightweight concrete provided that Nb and Npn are multiplied by a factor of 0.60 (not required for steel deck).
10. Values for Np, deck are for structural sand-lightweight concrete (f’c, min = 3,000 psi) and additional lightweight concrete reduction factors need not be applied.
In addition, evaluation for the concrete breakout capacity in accordance with ACI 318 D.5.2 is not required for anchors installed in the flute (soffit).
g
Powers USA: (800) 524-3244 or (914) 235-6300
Canada: (905) 673-7295 or (514) 631-4216
www.powers.com
4
®
PRODUCT INFORMATION
Wedge-Bolt +
SD PERFORMANCE DATA
Shear Design Information (For use with load combinations taken from ACI 318 Section 9.2)1,2
Design Characteristic
Notation
Units
Anchor category
1, 2 or 3
hnom
Nominal embedment depth
1/4”
3/8”
-
1
1
in.
1-3/4
2-1/8
Nominal Anchor Size
1/2”
5/8”
1
3/4”
1
1
3-1/2
2-1/2
4-1/4
4-3/8
3-1/4
STEEL STRENGTH IN SHEAR4,10
Steel strength in shear5
Reduction factor for steel strength 3
Load bearing length of anchor
(hef or 8do , whichever is less)
Nominal anchor diameter
Reduction factor for concrete breakout strength3
lb
(kN)
Vsa
φ
2,475
(11.0)
4,825
(21.5)
7,980
(35.5)
-
0.60
CONCRETE BREAKOUT STRENGTH IN SHEAR6,10
1.425
1.650
1.100
2.500
in.
le
(mm)
(36)
(42)
(28)
(64)
0.250
in.
0.500
0.375
do
(mm)
(6.4)
(12.7)
(9.5)
φ
19,350
(86.1)
11,990
(53.3)
-
2.145
(54)
3.100
(79)
2.910
(74)
0.750
(19.1)
0.625
(15.9)
0.70 (Condition B)
CONCRETE PRYOUT STRENGTH IN SHEAR6
Coefficient for pryout strength
(1.0 for hef < 2.5 in., 2.0 for hef ≥ 2.5 in.)
kcp
-
1.0
1.0
1.0
2.0
1.0
2.0
2.0
Effective embedment
hef
in.
(mm)
1.100
(28)
1.425
(36)
1.650
(42)
2.500
(64)
2.145
(54)
3.100
(79)
2.910
(74)
Reduction factor for pryout strength3
φ
-
0.70 (Condition B)
STEEL STRENGTH IN SHEAR FOR SEISMIC APPLICATIONS10
Steel strength in shear, seismic7
Reduction factor for steel strength
in shear for seismic3
Veq
φ
lb
(kN)
No
Data
3,670
(16.3)
7,980
(35.5)
11,990
(53.3)
12,970
(57.7)
0.60
-
STEEL STRENGTH IN SHEAR FOR STRUCTUAL SAND-LIGHTWEIGHT AND NORMAL-WEIGHT CONCRETE OVER STEEL DECK9
Steel strength in shear,
concrete over steel deck8
Reduction factor for steel strength
in shear for steel deck3
Vsa,deck
φ
lb
(kN)
No
Data
1,640
(7.3)
-
3,090
(13.7)
3,140
(14.0)
3,305
(14.7)
No
Data
0.60
1. The data in this table is intended to be used with the design provisions of ACI 318 Appendix D; for anchors resisting seismic load combinations the additional requirements of
ACI 318 D.3.3 shall apply.
2. Installation must comply with published instructions and details.
3. All values of φ were determined from the load combinations of ACI 318 Section 9.2. If the load combinations of Appendix C are used, the appropriate value
of φ must be determined in accordance with ACI 318 D.4.5. For reinforcement that meets ACI 318 Appendix D requirements for Condition A, see ACI 318
D.4.4 for the appropriate φ factor.
4. The Wedge-Bolt+ is considered a brittle steel element as defined by ACI 318 D.1.
5. Reported values for steel strength in shear are based on test results per ACI 355.2, 9.4 and shall be used for design. These reported values may be lower
than calculated results using equation D-20 in ACI 318-05 D.6.1.2 and D-18 in ACI 318-02, D.6.1.2.
6. Anchors are permitted to used in structural sand-lightweight concrete provided that Vb and Vcp are multiplied by a factor of 0.60 (not required for steel deck).
7. Reported values for steel strength in shear for seismic applications are based on test results per ACI 355.2, 9.6.
8. Values for Vsa,deck are for structual sand-lightweight concrete (f’c, min = 3,000 psi) and additional lightweight concrete reduction factors need not be applied.
In addition, evaluation for the concrete breakout capacity in accordance with ACI 318 D.6.2 and the pryout capacity in accordance with ACI 318 D.6.3 are not
required for anchors installed in the flute (soffit).
9. Shear loads for anchors installed through steel deck into concrete may be applied in any direction.
10. For 2003 IBC code base replace Vsa with Vs; and le with l with Veq with Vsa, seis
g
5
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Canada: (905) 673-7295 or (514) 631-4216
Powers USA: (800) 524-3244 or (914) 235-6300
®
Wedge-Bolt +
PRODUCT INFORMATION
Factored Design Strength (φ Nn and φ Vn ) Calculated in Accordance with ACI 318 Appendix D:
1. Tabular values are provided for illustration and are applicable for single anchors installed in normal-weight concrete
with minimum slab thickness, ha = hmin , and with the following conditions:
- ca1 is greater than or equal to the critical edge distance, cac (table values based on ca1 = cac).
- ca2 is greater than or equal to 1.5 ca1.
2. Calculations were performed according to ACI 318-05 Appendix D. The load level corresponding to the controlling
failure mode is listed. (e.g. For tension: steel, concrete breakout and pullout; For shear: steel, concrete breakout and
Ca1
pryout). Furthermore, the capacities for concrete breakout strength in tension and pryout strength in shear are calculated
ha
Ca2
using the effective embedment values, hef, for the selected anchors as noted in the design information tables.
Please also reference the installation specifications for more information.
3. Strength reduction factors (φ ) were based on ACI 318 Section 9.2 for load combinations. Condition B is assumed.
4. Tabular values are permitted for static loads only, seismic loading is not considered with these tables.
5. For designs that include combined tension and shear, the interaction of tension and shear loads must be calculated in accordance with ACI 318 Appendix D.
6. Interpolation is not permitted to be used with the tabular values. For intermediate base material compressive strengths please
see ACI 318 Appendix D. For other design conditions including seismic considerations please see ACI 318 Appendix D.
Tension and Shear Design Strength for Wedge-Bolt+ in Cracked Concrete
Nominal
Anchor
Size
(in.)
Nominal
Embed.
hnom
(in. )
Minimum Concrete Compressive Strength, f'c (psi)
φ Nn
2,500
φ Vn
φ Nn
3,000
φ Vn
φ Nn
4,000
φ Vn
φ Nn
6,000
φ Vn
φ Nn
8,000
φ Vn
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
1/4
1-3/4
-
-
-
-
-
-
-
-
-
-
3/8
2-1/8
940
940
1,030
1,030
1,190
1,190
1,460
1,460
1,685
1,685
2-1/2
1,175
1,145
1,285
1,250
1,485
1,445
1,815
1,770
2,100
2,045
3-1/2
1,925
1,915
2,110
2,095
2,440
2,420
2,985
2,965
3,450
3,420
3-1/4
1,735
1,870
1,905
2,050
2,195
2,365
2,690
2,900
3,105
3,345
4-3/8
2,790
2,785
3,055
3,050
3,525
3,520
4,320
4,325
4,990
4,980
4-1/4
2,740
3,180
3,005
3,485
3,465
4,025
4,245
4,925
4,905
5,690
1/2
5/8
3/4
Tension and Shear Design Strength for Wedge-Bolt+ in Uncracked Concrete
Nominal
Anchor
Size
(in.)
Nominal
Embed.
hnom
(in. )
1/4
3/8
1/2
5/8
3/4
Minimum Concrete Compressive Strength, f'c (psi)
φ Nn
2,500
φ Vn
φ Nn
3,000
φ Vn
φ Nn
4,000
φ Vn
φ Nn
6,000
φ Vn
φ Nn
8,000
φ Vn
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
1-3/4
900
970
985
1,060
1,140
1,225
1,395
1,485
1,610
1,485
2-1/8
1,330
1,320
1,455
1,445
1,680
1,670
2,060
2,045
2,375
2,360
2-1/2
1,655
1,600
1,815
1,755
2,095
2,025
2,565
2,480
2,965
2,865
3-1/2
3,085
2,680
3,380
2,935
3,905
3,385
4,780
4,150
5,520
4,780
3-1/4
2,450
2,640
2,685
2,895
3,100
3,340
3,800
4,090
4,385
4,725
4-3/8
4,260
3,900
4,670
4,270
5,390
4,930
6,600
6,040
7,625
6,975
4-1/4
3,870
4,455
4,240
4,880
4,895
5,635
5,995
6,900
6,925
7,965
Legend
Steel Strength Controls
Concrete Breakout Strength Controls
Anchor Pullout/Pryout Strength Controls
g
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PRODUCT INFORMATION
Factored Design Strength (φ Nn and φ Vn ) Calculated in Accordance with ACI 318 Appendix D:
1. Tabular values are provided for illustration and are applicable for single anchors installed in normal-weight concrete
with minimum slab thickness, ha = hmin , and with the following conditions:
- ca1 is greater than or equal to the minimum edge distance, close edge condition cmin (table values based on ca1 = cmin).
- ca2 is greater than or equal to 1.5 ca1.
2. Calculations were performed according to ACI 318-05 Appendix D. The load level corresponding to the controlling
Ca1
failure mode is listed. (e.g. For tension: steel, concrete breakout and pullout; For shear: steel, concrete breakout and
ha
Ca2
pryout). Furthermore, the capacities for concrete breakout strength in tension and pryout strength in shear are calculated
using the effective embedment values, hef, for the selected anchors as noted in the design information tables.
Please also reference the installation specifications for more information.
3. Strength reduction factors (φ ) were based on ACI 318 Section 9.2 for load combinations. Condition B is assumed.
4. Tabular values are permitted for static loads only, seismic loading is not considered with these tables.
5. For designs that include combined tension and shear, the interaction of tension and shear loads must be calculated in accordance with ACI 318 Appendix D.
6. Interpolation is not permitted to be used with the tabular values. For intermediate base material compressive strengths please
see ACI 318 Appendix D. For other design conditions including seismic considerations please see ACI 318 Appendix D.
Tension and Shear Design Strength with 1-3/4” Edge Distance for Wedge-Bolt+ in Cracked Concrete
Nominal
Anchor
Size
(in.)
Nominal
Embed.
hnom
(in. )
Minimum Concrete Compressive Strength, f'c (psi)
φ Nn
2,500
φ Vn
φ Nn
3,000
φ Vn
φ Nn
4,000
φ Vn
φ Nn
6,000
φ Vn
φ Nn
8,000
φ Vn
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
1/4
1-3/4
-
-
-
-
-
-
-
-
-
-
3/8
2-1/8
395
455
435
495
500
575
615
705
710
810
2-1/2
400
510
440
560
505
645
620
790
715
910
3-1/2
425
555
465
605
535
700
655
855
760
990
3-1/4
415
575
450
630
520
725
640
890
740
1,025
4-3/8
445
620
490
675
565
780
690
955
795
1,105
4-1/4
440
645
480
705
555
815
680
1,000
785
1,150
1/2
5/8
3/4
Tension and Shear Design Strength with 1-3/4” Edge Distance for Wedge-Bolt+ in Uncracked Concrete
Nominal
Anchor
Size
(in.)
Nominal
Embed.
hnom
(in. )
1/4
3/8
1/2
5/8
3/4
Minimum Concrete Compressive Strength, f'c (psi)
φ Nn
2,500
φ Vn
φ Nn
3,000
φ Vn
φ Nn
4,000
φ Vn
φ Nn
6,000
φ Vn
φ Nn
8,000
φ Vn
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
Tension
(lbs.)
Shear
(lbs.)
1-3/4
390
535
425
585
490
675
600
825
695
955
2-1/8
435
635
475
695
550
805
675
985
780
1,135
2-1/2
430
715
470
780
545
900
665
1,105
770
1,275
3-1/2
560
775
545
850
630
980
775
1,200
895
1,385
3-1/4
500
805
640
880
735
1,015
900
1,245
1,040
1,435
4-3/8
585
865
640
945
740
1,095
905
1,340
1,045
1,545
4-1/4
450
900
495
990
570
1,140
695
1,395
805
1,615
Legend
Concrete Breakout Strength Controls
g
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PRODUCT INFORMATION
ASD PERFORMANCE DATA
Ultimate Load Capacities for Wedge-Bolt+ Installed into Normal-Weight Concrete at Critical
Spacing and Edge Distances1,2,3
Anchor
Diameter
in.
(mm)
1/4
(6.4)
3/8
(9.5)
1/2
(12.7)
5/8
(15.9)
3/4
(19.1)
Minimum
Embedment
Depth
in.
(mm)
1
(25.4)
1-1/2
(38.1)
2
(50.8)
2-1/2
(63.5)
1-1/2
(38.1)
2
(50.8)
2-1/2
(63.5)
3
(76.2)
3-1/2
(88.9)
2
(50.8)
2-1/2
(63.5)
3
(76.2)
3-1/2
(88.9)
4
(101.6)
2-1/2
(63.5)
3
(76.2)
3-1/2
(88.9)
4
(101.6)
4-1/2
(114.3)
5
(127.0)
3
(76.2)
3-1/2
(88.9)
4
(101.6)
4-1/2
(114.3)
5
(127.0)
5-1/2
(139.7)
6
(152.4)
Minimum Concrete Compressive Strength (f'c )
2,000 psi (13.8 Mpa)
4,000 psi (27.6 Mpa)
6,000 psi (41.4 Mpa)
Tension
lbs.
(kN)
Shear
lbs.
(kN)
Tension
lbs.
(kN)
Shear
lbs.
(kN)
Tension
lbs.
(kN)
Shear
lbs.
(kN)
720
(3.2)
1,440
(6.5)
2,400
(10.8)
3,520
(15.8)
1,900
(8.6)
3,000
(13.5)
4,100
(18.5)
5,800
(26.1)
7,500
(33.8)
2,860
(12.9)
4,100
(18.5)
5,920
(26.6)
6,060
(27.3)
7,560
(34.0)
3,420
(15.4)
4,560
(20.5)
5,720
(25.7)
8,240
(37.1)
10,780
(48.5)
13,300
(59.9)
4,320
(19.4)
5,720
(25.7)
7,120
(32.0)
9,240
(41.6)
11,340
(51.0)
13,440
(60.5)
15,540
(69.9)
920
(4.0)
2,000
(8.8)
2,000
(8.8)
2,000
(8.8)
2,760
(12.2)
3,100
(13.7)
3,440
(15.3)
4,120
(18.3)
4,820
(21.4)
4,960
(22.0)
5,800
(25.8)
6,200
(27.5)
8,020
(35.6)
8,660
(39.0)
7,200
(32.4)
7,920
(35.2)
8,640
(38.4)
9,540
(42.4)
10,460
(46.5)
11,360
(50.5)
9,480
(42.1)
10,460
(46.5)
11,460
(50.9)
13,120
(58.3)
14,780
(65.7)
16,640
(74.0)
18,120
(80.6)
1,340
(6.0)
2,140
(9.6)
3,940
(17.7)
4,660
(21.0)
2,520
(11.3)
3,920
(17.6)
5,320
(23.9)
7,740
(34.8)
10,140
(45.6)
3,940
(17.7)
5,200
(23.4)
7,800
(35.1)
8,480
(38.2)
12,620
(56.8)
4,720
(21.2)
7,380
(33.2)
10,040
(45.2)
12,760
(57.4)
15,500
(69.8)
18,220
(82.0)
6,480
(29.2)
9,320
(41.9)
12,140
(54.6)
13,580
(61.1)
15,020
(67.6)
16,460
(74.1)
17,900
(80.6)
1,880
(8.3)
2,080
(9.2)
2,080
(9.2)
2,080
(9.2)
3,440
(15.3)
3,440
(15.3)
3,440
(15.3)
4,320
(19.2)
5,200
(23.1)
5,680
(25.2)
6,480
(28.8)
7,240
(32.2)
8,160
(36.2)
9,080
(40.9)
10,240
(45.5)
10,240
(45.5)
10,240
(45.5)
11,140
(49.5)
12,040
(53.5)
12,960
(57.6)
12,120
(53.9)
14,820
(65.9)
17,520
(77.9)
18,660
(83.0)
19,740
(89.8)
20,840
(92.7)
21,960
(97.6)
1,660
(7.5)
2,480
(11.2)
4,980
(22.4)
5,260
(23.7)
3,040
(13.7)
5,200
(23.4)
7,340
(33.0)
9,900
(44.6)
12,440
(56.0)
4,780
(21.5)
6,480
(28.8)
9,380
(42.2)
11,900
(53.6)
12,620
(56.8)
6,900
(31.1)
8,960
(40.3)
11,040
(49.7)
14,320
(64.4)
17,600
(79.2)
20,860
(93.9)
8,700
(39.2)
11,360
(51.1)
14,020
(63.1)
16,720
(75.2)
19,400
(87.3)
22,080
(99.4)
24,760
(111.4)
2,160
(9.6)
2,260
(10.0)
2,680
(11.9)
2,680
(11.9)
5,600
(24.9)
5,600
(24.9)
5,600
(24.9)
5,600
(24.9)
5,600
(24.9)
7,600
(33.8)
7,960
(35.4)
7,960
(35.4)
8,600
(38.2)
9,600
(43.2)
10,180
(45.2)
11,400
(50.7)
11,400
(50.7)
12,080
(53.7)
12,760
(56.7)
13,480
(59.9)
14,800
(65.8)
16,400
(72.9)
18,000
(80.0)
19,840
(88.2)
21,700
(96.5)
23,560
(104.8)
25,420
(113.0)
1. Tabulated load values are for anchors installed in concrete. Concrete compressive strength must be at the specified minimum at the time of installation.
2. Ultimate load capacities must be reduced by a minimum safety factor of 4.0 or greater to determine allowable working load.
3. Allowable load capacities are multiplied by reduction factors found in the Design Criteria section when anchor spacing or edge distances are less than critical distances.
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Wedge-Bolt +
PRODUCT INFORMATION
ASD PERFORMANCE DATA
Ultimate and Allowable Load Capacities for Wedge-Bolt+ Installed in Structural Lightweight Concrete1,2,3,4
Nominal
Anchor
Diameter
d
in.
(mm)
Minimum
Embedment
Depth
hv
in.
(mm)
Tension
lbs.
(kN)
Shear
lbs.
(kN)
Tension
lbs.
(kN)
Shear
lbs.
(kN)
1/4
(6.4)
2
(50.8)
3,320
(14.9)
2,720
(12.1)
830
(3.7)
680
(3.0)
1 1/2
(38.1)
2,220
(10.0)
2,200
(9.9)
555
(2.5)
550
(2.5)
3
(76.2)
5,280
(23.8)
4,660
(20.7)
1,320
(5.9)
1,165
(5.1)
2
(50.8)
2,920
(13.1)
5,360
(23.6)
730
(3.3)
1,340
(5.9)
4
(101.6)
7,720
(34.7)
9,260
(41.1)
1,930
(8.7)
2,315
(10.2)
2 1/2
(63.5)
3,720
(16.7)
9,240
(41.6)
930
(4.2)
2,310
(10.4)
5
(127.0)
12,160
(54.7)
14,940
(66.4)
3,040
(13.7)
3,735
(16.6)
5 1/4
(133.4)
13,320
(59.9)
17,780
(79.0)
3,330
(15.0)
4,445
(19.7)
3/8
(9.5)
1/2
(12.7)
5/8
(15.9)
3/4
(19.1)
1.
2.
3.
4.
Minimum Concrete Compressive Strength f´c ≥ 3,000 psi (20.7 MPa)
Allowable Load
Ultimate Load
Tabulated load values are for anchors installed in structuarl sand-lightweight concrete. Concrete compressive strength must be at the specified minimum at the time of installation.
Allowable load capacities are calculated using an applied safety factor of 4.0.
Allowable load capacities are multiplied by reduction factors found in the Design Criteria section when anchor spacing or edge distances are less than critical distances.
Linear interpolation for allowable loads for anchors at intermediate embedment depths may also be used.
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PRODUCT INFORMATION
ASD PERFORMANCE DATA
Ultimate and Allowable Shear Load Capacities for Wedge-Bolt+
at 1-3/4” Edge of Normal-Weight Concrete1,2
f´c ≥ 2,000 psi (13.8 MPa)
Edge
Nominal
Anchor
Diameter
d
in.
(mm)
1/2
(12.7)
5/8
(15.9)
3/4
(19.1)
Minimum
Embedment
Depth
hv
in.
(mm)
3 3/8
(85.7)
3 3/8
(85.7)
3 3/8
(85.7)
Minimum
Edge
Distance
Parallel to the Free Edge
in.
(mm)
Ultimate
Shear
lbs.
(kN)
Allowable
Shear
lbs.
(kN)
1 3/4
(44.5)
1 3/4
(44.5)
1 3/4
(44.5)
5,020
(22.6)
5,420
(24.4)
5,660
(25.5)
1,255
(5.6)
1,355
(6.1)
1,415
(6.4)
1. Tabulated load values are for anchors installed in concrete. Concrete compressive strength must be at the specified minimum at
the time of installation.
2. Allowable load capacities are calculated using an applied safety factor of 4.0.
Allowable Load Capacities for Wedge-Bolt+ Installed at 1-3/4” Edge
of Normal-Weight Concrete Stem Walls1,2,3
f´c ≥ 2,500 psi (17.2 MPa)
Edge
Nominal
Anchor
Diameter
d
in.
(mm)
1/2
(12.7)
5/8
(15.9)
Minimum
Embedment
Depth
hv
in.
(mm)
Minimum
Edge
Distance
4
(101.6)
2 1/2
(63.5)
3 3/4
(95.3)
5
(127.0)
1 3/4
(44.5)
in.
(mm)
1 3/4
(44.5)
Parallel to
the Free
Edge
Towards the
Free Edge
Tension
lbs.
(kN)
Shear
lbs.
(kN)
Shear
lbs.
(kN)
1,270
(5.7)
610
(2.7)
1,310
(5.9)
2,015
(9.1)
1,425
(6.4)
1,155
(5.2)
1,330
(6.0)
1,505
(6.8)
470
(2.1)
380
(1.7)
490
(2.2)
600
(2.7)
1. Tabulated load values are for anchors installed in concrete. Concrete compressive strength must be at the specified minimum at
the time of installation.
2. Allowable load capacities are calculated using an applied safety factor of 4.0.
3. Allowable load capacities may also be applied to conditions at the edge of normal-weight concrete slabs.
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PRODUCT INFORMATION
MASONRY PERFORMANCE DATA
Allowable Load Capacities for Wedge-Bolt+ Anchors Installed into the Face of Grout Filled
Concrete Masonry1,2,3,4
Anchor
Diameter
d
(in.)
(mm)
1/4
(6.4)
3/8
(9.5)
1/2
(12.7)
5/8
(15.9)
Minimum
Embed.
hv
(in.)
(mm)
1
(25.4)
2
(50.8)
2
(50.8)
1-1/2
(38.1)
2-1/2
(63.5)
2-1/2
(63.5)
2-1/2
(63.5)
3-1/2
(88.9)
2
(50.8)
3
(76.2)
3-1/2
(88.9)
4
(101.6)
2-1/2
(63.5)
3 1/4
4
(101.6)
5
(127.0)
3
(76.2)
3/4
(19.1)
3-1/2
(88.9)
4
(101.6)
5
(127.0)
Minimum
Edge
Distance
(in.)
(mm)
3-3/4
(95.3)
1-1/2
(38.1)
3-3/4
(95.3)
3-3/4
(95.3)
1-3/4
(44.5)
7-7/8
(200.0)
12
(304.8)
12
(304.8)
3-3/4
(95.3)
7-7/8
(200.0)
2-3/4
(69.9)
12
(304.8)
3-3/4
(95.3)
7-7/8
(200.0)
Minimum
End
Distance
(in.)
(mm)
3-3/4
(95.3)
2-3/4
(69.9)
3-3/4
(95.3)
12
(304.8)
3-3/4
(95.3)
12
(304.8)
12
(304.8)
3-3/4
(95.3)
12
(304.8)
12
(304.8)
12
(304.8)
3-3/4
(95.3)
12
(304.8)
7-7/8
(200.0)
12
(304.8)
12
(304.8)
Tension
lbs.
(kN)
f'm = 1,500 psi f'm ≥ 2,000 psi
80
(0.4)
230
(1.0)
340
(1.5)
210
(0.9)
295
(1.3)
750
(3.4)
615
(2.7)
1,290
(5.8)
335
(1.5)
930
(4.2)
595
(2.6)
1,525
(6.9)
455
(2.0)
885
(4.0)
1,310
(5.9)
1,940
(8.7)
615
(2.8)
615
(2.8)
1,035
(4.7)
1,455
(6.5)
1,680
(7.6)
80
(0.4)
265
(1.2)
340
(1.5)
210
(0.9)
340
(1.5)
750
(3.4)
710
(3.1)
1,290
(5.8)
335
(1.5)
930
(4.2)
685
(3.0)
1,525
(6.9)
455
(2.0)
885
(4.0)
1,310
(5.9)
1,940
(8.7)
615
(2.8)
615
(2.8)
1,035
(4.7)
1,455
(6.5)
1,680
(7.6)
Shear
lbs.
(kN)
f'm = 1,500 psi f'm ≥ 2,000 psi
150
(0.7)
165
(0.7)
340
(1.5)
400
(1.8)
210
(0.9)
655
(2.9)
915
(4.0)
910
(4.0)
720
(3.2)
900
(4.0)
405
(1.8)
1,085
(4.8)
1,085
(4.8)
150
(0.7)
190
(0.8)
340
(1.5)
400
(1.8)
245
(1.1)
655
(2.9)
1055
(4.7)
910
(4.0)
720
(3.2)
900
(4.0)
470
(2.1)
1,085
(4.8)
1,085
(4.8)
1,085
(4.8)
1,085
(4.8)
1,255
(5.6)
750
(3.4)
1,320
(5.9)
1,265
(5.7)
1,320
(5.9)
1,775
(7.9)
1,255
(5.6)
750
(3.4)
1,320
(5.9)
1,265
(5.7)
1,320
(5.9)
1,775
(7.9)
1. Tabulated load values are for anchors installed in minimum 6" wide, Grade N, Type II, lightweight concrete masonry units
conforming to ASTM C 90 that have reached the minimum designated ultimate compressive strength at the time of
installation (f'm ≥ 1,500 psi).
2. Allowable load capacities listed are calculated using an applied safety factor of 5.0. Consideration of safety factors
of 10 or higher may be necessary depending on the application, such as life safety or overhead.
3. Linear interpolation for allowable loads for anchors at intermediate embedment depths may be used.
4. Allowable shear loads for 1/4" and 3/8" diameter anchor installations into the face shell of a masonry wall may be
applied in any direction. Allowable shear loads for anchor diameters 1/2" and greater installed into the face shell
may be applied in any direction provided the location is a minimum of 12" from the edge of the wall. For anchor
diameters 1/2" and greater installed with an edge distance less than 12" the allowable shear loads may be applied
in any direction except upward vertically.
g
11
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®
Wedge-Bolt +
PRODUCT INFORMATION
MASONRY PERFORMANCE DATA
Allowable Load Capacities for Wedge-Bolt+ Anchors Installed into the Top of Grout-Filled
Concrete Masonry Wall1,2
Nominal
Anchor
Diameter
d
in.
(mm)
3/8
(9.5)
Minimum
Embed.
Depth
hv
in.
(mm)
Minimum
Edge
Distance
in.
(mm)
Minimum
End
Distance
in.
(mm)
2-1/2
(63.5)
1-1/2
(38.1)
3
(76.2)
1-1/2
(38.1)
2-1/2
(63.5)
1/2
(12.7)
5/8
(15.9)
Shear
(Toward End of Wall)
lbs.
(kN)
f'm = 1,500 f'm ≥ 2,000 f'm = 1,500 f'm ≥ 2,000 f'm = 1,500 f'm ≥ 2,000
psi
psi
psi
psi
psi
psi
310
355
140
160
250
290
(1.4)
(1.6)
(0.6)
(0.7)
(1.1)
(1.3)
-
2
(50.8)
Shear
(Toward Edge of Wall)
lbs.
(kN)
Tension
lbs.
(kN)
-
350
(1.6)
350
(1.6)
350
(1.6)
350
(1.6)
-
570
(2.5)
570
(2.5)
380
(1.7)
380
(1.7)
380
(1.7)
380
(1.7)
3-1/2
(88.9)
1-3/4
(44.5)
3
(76.2)
535
(2.4)
620
(2.7)
260
(1.2)
305
(1.3)
240
(1.1)
275
(1.2)
4-1/2
(114.3)
1-3/4
(44.5)
3
(76.2)
745
(3.3)
860
(3.8)
-
-
-
-
4-1/2
(114.3)
1-3/4
(44.5)
9
(228.6)
835
(3.7)
965
(4.3)
250
(1.1)
285
(1.2)
575
(2.6)
660
(2.9)
5-1/2
(139.7)
2-3/4
(69.9)
9
(228.6)
1,005
(4.5)
1,165
(5.2)
420
(1.9)
490
(2.2)
-
-
7-1/2
(190.5)
2-3/4
(69.9)
9
(228.6)
1,215
(5.4)
1,405
(6.2)
-
-
-
-
1.Tabulated load values are for carbon steel and stainless steel anchors installed in minimum 6-inch wide, minimum Grade N, Type II, lightweight, medium-weight or normal-weight concrete
masonry units conforming to ASTM C 90. Mortar must be minimum Type N. Masonry compressive strength must be at the specified minimum at the time of installation.
2. Allowable load capacities listed are calculated using an applied safety factor of 5.0. Consideration of safety factors of 10 or higher may be necessary depending on the application, such as
life safety or overhead.
Allowable Load Capacities for Wedge-Bolt+ Anchors Installed into the T-Joint of Grout-Filled
Concrete Masonry Wall1,2,3,4
Nominal
Anchor
Diameter
in.
(mm)
3/8
(9.5)
1/2
(12.7)
5/8
(15.9)
3/4
(19.1)
Minimum
Embed.
Depth
in.
(mm)
1-1/2
(38.1)
3-1/2
(88.9)
4
(101.6)
4
(101.6)
2-1/2
(63.5)
4
(101.6)
Minimum
Edge
Distance
in.
(mm)
Minimum
End
Distance
in.
(mm)
Tension
lbs.
(kN)
Shear
lbs.
(kN)
-
16
(406.4)
16
(406.4)
830
(3.7)
1,090
(4.9)
840
(3.8)
510
(2.3)
-
1,225
(5.5)
890
(4.0)
1. Tabulated load values are for carbon steel and stainless steel anchors installed in minimum 6-inch wide, minimum Grade N, Type II, lightweight, medium-weight or normal-weight
concrete masonry units conforming to ASTM C 90. Mortar must be minimum Type N. Masonry compressive strength must be at the specified minimum at the time of installation (f'm ≥ 1,500 psi).
2. Allowable load capacities listed are calculated using an applied safety factor of 5.0. Consideration of safety factors of 10 or higher may be necessary depending on the application, such as life
safety or overhead.
3. Allowable shear loads for anchor installation into the horizontal and vertical mortar joints may be applied in any direction provided the anchor location is a minimum of 16" from the edge and
end of the wall. For anchor installations with an edge diatance less than 16" the allowable shear loads may be applied in any direction except upward vertically.
4. Linear intepolation for allowable loads for anchors at intermediate embedment depths may be used.
g
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12
®
Wedge-Bolt +
PRODUCT INFORMATION
MASONRY PERFORMANCE DATA
Allowable load capacities for Wedge-Bolt+ anchors installed into Multiple Wythe Solid Clay Brick
Masonry1,2
Nominal
Anchor
Diameter
in.
(mm)
Minimum
Embed.
Depth
in.
(mm)
Minimum
Edge & End
Distance
in.
(mm)
Minimum
Spacing
Distance
in.
Tension
lbs.
(kN)
Shear
lbs.
(kN)
1/4
(6.4)
3/8
(9.5)
1/2
(12.7)
5/8
(15.9)
3/4
(19.1)
2-1/2
(63.5)
3-1/2
(88.9)
4
(101.6)
4
(101.6)
4
(101.6)
4
(101.6)
6
(152.4)
8
(203.2)
10
(254.0)
12
(304.8)
4"
Any Direction
6"
Any Direction
8"
Any Direction
12"
Any Direction
16"
Any Direction
455
(2.0)
680
(3.1)
960
(4.3)
1,225
(5.5)
1,315
(5.9)
295
(1.3)
630
(2.8)
1,230
(5.5)
1,710
(7.6)
1,950
(8.7)
1. Tabulated load values are for anchors installed in multiple wythe, minimum Grade SW, solid clay brick masonry walls conforming to ASTM C 62. Mortar must be minimum
Type N. Masonry compressive strength must be at the specified minimum at the time of installation (f'm ≥ 1,500 psi).
2. Allowable load capacities listed are calculated using an applied safety factor of 5.0. Consideration of safety factors of 10 or higher may be necessary depending on the
application, such as life safety or overhead.
DESigN CRiTERiA (ALLOWABLE STRESS DESigN)
Combined Loading
For anchors loaded in both shear and tension, the combination of loads should be proportioned as follows:
Where: Nu = Applied Service Tension Load
5
5
Nn = Allowable Tension Load
Nu
Vu
Nu 3
Vu 3
+
OR
+
≤1
≤1
V
u = Applied Service Shear Load
Nn
Vn
Nn
Vn
Vn = Allowable Shear Load
( ) ( )
( ) ( )
Load Adjustment Factors for Spacing and Edge Distances1
Anchor Installed in Normal-Weight Concrete
Anchor
Dimension
Spacing (s)
Edge Distance (c)
Load Type
Critical Distance
(Full Anchor Capacity)
Critical
Load Factor
Minimum Distance
(Reduced Capacity)
Minimum
Load Factor
Tension
scr = 12d
FNS = 1.0
smin = 4d
FNS = 0.50
Shear
scr = 12d
FVS = 1.0
smin = 4d
FVS = 0.75
Tension
ccr = 8d
ccr = 12d
FNC = 1.0
cmin = 3d
cmin = 3d
FNC = 0.70
Shear
FVC = 1.0
FVC = 0.15
Anchor Installed in Structural Lightweight Concrete
Anchor
Dimension
Spacing (s)
Edge Distance (c)
Load Type
Critical Distance
(Full Anchor Capacity)
Critical
Load Factor
Minimum Distance
(Reduced Capacity)
Minimum
Load Factor
Tension
scr = 14.1d
FNS = 1.0
smin = 4.7d
FNS = 0.50
Shear
scr = 14.1d
FVS = 1.0
smin = 4.7d
FVS = 0.75
Tension
ccr = 9.4d
ccr = 14.1d
FNC = 1.0
cmin = 3.5d
FNC = 0.70
FVC = 1.0
cmin = 3.5d
FVC = 0.15
Shear
1. Allowable load values found in the performance data tables are multiplied by reduction factors when anchor spacing or edge distances are less than critical distances. Linear interpolation is allowed
for intermediate anchor spacing and edge distances between critical and minimum distances.When an anchor is affected by both reduced spacing and edge distance, the spacing and edge reduction
factors must be combined (multiplied). Multiple reduction factors for anchor spacing and edge distance may be required depending on the anchor group configuration.
g
13
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PRODUCT INFORMATION
®
Wedge-Bolt +
DESigN CRiTERiA (ALLOWABLE STRESS DESigN)
Load Adjustment Factors for Normal-Weight Concrete
Spacing, Tension (FNS)
Spacing, s (inches)
Dia. (in.)
scr (in.)
smin (in.)
1
1 1/2
2
2 1/2
3
4 1/2
6
7 1/2
9
1/4
3/8
1/2
5/8
3/4
3
1
0.50
0.63
0.75
0.88
1.00
4 1/2
1 1/2
6
2
7 1/2
2 1/2
9
3
1/4
3/8
1/2
5/8
3/4
3
1
0.75
0.81
0.88
0.94
1.00
4 1/2
1 1/2
6
2
7 1/2
2 1/2
9
3
0.50
0.58
0.67
0.75
1.00
0.50
0.56
0.63
0.81
1.00
0.50
0.55
0.70
0.85
1.00
0.50
0.63
0.75
0.88
1.00
Spacing, Shear (FVS)
Spacing, s (inches)
Dia. (in.)
scr (in.)
smin (in.)
1
1 1/2
2
2 1/2
3
4 1/2
6
7 1/2
9
0.75
0.79
0.83
0.88
1.00
0.75
0.78
0.81
0.91
1.00
0.75
0.78
0.85
0.93
1.00
Edge Distance, c (in.)
3/4
1 1/8
1 1/2
1 7/8
2
2 1/4
3
4
5
6
1/4
3/8
1/2
5/8
3/4
2
3/4
0.70
0.79
0.88
0.97
1.00
3
1 1/8
4
1 1/2
5
1 7/8
6
2 1/4
0.70
0.76
0.82
0.84
0.88
1.00
0.70
0.75
0.76
0.79
0.88
1.00
0.70
0.71
0.74
0.81
0.90
1.00
Edge Distance, c (in.)
3/4
1 1/8
1 1/2
1 7/8
2 1/4
3
4 1/2
6
7 1/2
9
1/4
3/8
1/2
5/8
3/4
3
3/4
0.15
0.29
0.43
0.58
0.72
1.00
4 1/2
1 1/8
6
1 1/2
7 1/2
1 7/8
9
2 1/4
0.15
0.24
0.34
0.43
0.62
1.00
0.15
0.22
0.29
0.43
0.72
1.00
0.15
0.21
0.32
0.55
0.77
1.00
Notes: For anchors loaded in tension, the critical
edge distance (ccr ) is equal to 8 anchor diameters
(8d) at which the anchor achieves 100% of load.
Minimum edge distance (cmin ) is equal to 3 anchor
diameters (3d) at which the anchor achieves 70%
of load.
0.70
0.76
0.84
0.92
1.00
Edge Distance, Shear (FVC)
Dia. (in.)
ccr (in.)
cmin (in.)
Notes: For anchors loaded in shear, the critical
spacing (scr ) is equal to 12 anchor diameters (12d)
at which the anchor achieves 100% of load.
Minimum spacing (smin ) is equal to 4 anchor
diameters (4d) at which the anchor achieves 75%
of load.
0.75
0.81
0.88
0.94
1.00
Edge Distance, Tension (FNC)
Dia. (in.)
ccr (in.)
cmin (in.)
Notes: For anchors loaded in tension, the critical
spacing (scr ) is equal to 12 anchor diameters (12d)
at which the anchor achieves 100% of load.
Minimum spacing (smin ) is equal to 4 anchor
diameters (4d) at which the anchor achieves 50%
of load.
Notes: For anchors loaded in shear, the critical edge
distance (ccr ) is equal to 12 anchor diameters (12d)
at which the anchor achieves 100% of load.
Minimum edge distance (cmin ) is equal to 3 anchor
diameters (3d) at which the anchor achieves 15%
of load
0.15
0.24
0.43
0.62
0.81
1.00
g
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14
®
Wedge-Bolt +
PRODUCT INFORMATION
DESigN CRiTERiA (ALLOWABLE STRESS DESigN)
Load Adjustment Factors for Structural Lightweight Concrete
Spacing, s (inches)
Dia. (in.)
scr (in.)
smin (in.)
1 1/4
1 3/4
2 3/8
3
3 1/2
5 1/4
7
8 7/8
10 1/2
1/4
3 1/2
1 1/4
0.50
0.61
0.75
0.89
1.00
Spacing, Tension (FNS)
3/8
1/2
5/8
3/4
5 1/4
1 3/4
8 7/8
3
10 1/2
3 1/2
0.50
0.59
0.67
0.74
1.00
7
2 3/8
0.50
0.57
0.62
0.82
1.00
0.50
0.54
0.70
0.84
1.00
0.50
0.63
0.75
0.88
1.00
Spacing, Shear (FVS)
Spacing, s (inches)
Dia. (in.)
scr (in.)
smin (in.)
1 1/4
1 3/4
2 3/8
3
3 1/2
5 1/4
7
8 7/8
10 1/2
Edge Distance, c (in.)
Dia. (in.)
ccr (in.)
cmin (in.)
7/8
1 3/8
1 3/4
2 1/4
2 3/8
2 5/8
3 1/2
4 3/4
5 7/8
7
1/4
3/8
1/2
5/8
3/4
3 1/2
1 1/4
0.75
0.81
0.88
0.94
1.00
5 1/4
1 3/4
7
2 3/8
8 7/8
3
10 1/2
3 1/2
1/4
2 3/8
7/8
0.70
0.80
0.88
0.98
1.00
0.75
0.79
0.84
0.87
1.00
0.75
0.78
0.81
0.91
1.00
Edge Distance, Tension (FNC)
3/8
1/2
3 1/2
1 3/8
0.70
0.76
0.83
0.84
0.88
1.00
4 3/4
1 3/4
0.70
0.75
0.76
0.79
0.88
1.00
0.75
0.77
0.85
0.92
1.00
5/8
3/4
7
2 5/8
Edge Distance, c (in.)
7/8
1 3/8
1 3/4
2 1/4
2 5/8
3 1/2
5 1/4
7
8 7/8
10 1/2
1/4
3/8
1/2
5/8
3/4
3 1/2
7/8
0.15
0.31
0.43
0.59
1.00
5 1/4
1 3/8
7
1 3/4
8 7/8
2 1/4
10 1/2
2 5/8
0.15
0.24
0.35
0.43
0.62
1.00
0.15
0.23
0.29
0.43
0.71
1.00
0.15
0.21
0.32
0.54
0.77
1.00
Notes: For anchors loaded in tension, the critical
edge distance (ccr ) is equal to 9.4 anchor diameters
(9.4d) at which the anchor achieves 100% of load.
Minimum edge distance (cmin ) is equal to 3.5 anchor
diameters (3.5d) at which the anchor achieves 70%
of load.
0.70
0.76
0.84
0.92
1.00
Edge Distance, Shear (FVC)
Dia. (in.)
ccr (in.)
cmin (in.)
Notes: For anchors loaded in shear, the critical
spacing (scr ) is equal to 14.1 anchor diameters
(14.1d) at which the anchor achieves 100% of load.
Minimum spacing (smin ) is equal to 4.7 anchor
diameters (4.7d) at which the anchor achieves 75%
of load.
0.75
0.82
0.88
0.94
1.00
5 7/8
2 1/4
0.70
0.72
0.74
0.81
0.91
1.00
Notes: For anchors loaded in tension, the critical
spacing (scr ) is equal to 14.1 anchor diameters
(14.1d) at which the anchor achieves 100% of load.
Minimum spacing (smin ) is equal to 4.7 anchor
diameters (4.7d) at which the anchor achieves 50%
of load.
Notes: For anchors loaded in shear, the critical edge
distance (ccr ) is equal to 14.1 anchor diameters
(14.1d) at which the anchor achieves 100% of load.
Minimum edge distance (cmin ) is equal to 3.5
anchor diameters (3.5d) at which the anchor
achieves 15% of load
0.15
0.43
0.62
0.82
1.00
g
15
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Powers USA: (800) 524-3244 or (914) 235-6300
®
Wedge-Bolt +
PRODUCT INFORMATION
ORDERING INFORMATION
Wedge-Bolt+ Screw Anchor
(Carbon Steel with Blue Tip)
Wedge-Bolt+ Mechanically Galvanized
Cat. No.
Anchor
Size
7204SD
1/4" x 1-1/4"
100
600
3
7206SD
1/4" x 1-3/4"
100
600
7207SD
1/4" x 2"
100
7208SD
1/4" x 2-1/4"
7210SD
Box Carton Wt./100
Qty.
Qty.
(lbs)
Cat.
No.
Anchor
Size
Box
Qty.
Carton
Qty.
7726SD 3/8" x 4"
50
250
4
7728SD 3/8" x 5"
50
250
600
4
7730SD 3/8" x 6"
50
150
100
600
4
7746SD 1/2" x 4"
50
150
1/4" x 3"
100
500
5
7748SD 1/2" x 5"
25
100
7220SD
3/8" x 1-3/4"
50
300
9
7750SD 1/2" x 6"
25
75
7222SD
3/8" x 2-1/2"
50
300
10
7751SD 1/2" x 6-1/2"
25
75
7224SD
3/8" x 3"
50
250
12
7752SD 1/2" x 8"
25
75
7226SD
3/8" x 4"
50
250
15
7764SD 5/8" x 5"
25
75
18
7766SD 5/8" x 6"
25
75
22
7768SD 5/8" x 6-1/2"
25
75
25
75
7228SD
7230SD
3/8" x 5"
3/8" x 6"
50
50
250
150
7240SD
1/2" x 2"
50
200
15
7770SD 5/8" x 8"
7242SD
1/2" x 2-1/2"
50
200
17
7786SD 3/4" x 6"
20
60
7244SD
1/2" x 3"
50
150
20
7789SD 3/4" x 8-1/2"
10
40
7246SD
1/2" x 4"
50
150
26
7790SD 3/4" x 10"
10
20
7248SD
1/2" x 5"
25
100
30
7250SD
1/2" x 6"
25
75
35
7268SD
1/2" x 6-1/2"
25
75
37
7252SD
1/2" x 8"
25
75
43
7260SD
5/8" x 3"
25
100
35
7262SD
5/8" x 4"
25
100
41
7264SD
5/8" x 5"
25
75
48
7266SD
5/8" x 6"
25
75
54
7270SD
5/8" x 8"
25
75
65
7280SD
3/4" x 3"
20
60
50
7282SD
3/4" x 4"
20
60
60
7284SD
3/4" x 5"
20
60
71
7286SD
3/4" x 6"
20
60
81
7288SD
3/4" x 8 "
10
40
103
7290SD
3/4" x 10 "
10
30
100
The published size includes the diameter and length of the anchor measured
from under the head.
Wedge-Bolt+ is marked with a blue tip and must be installed with a matched
tolerance Wedge-bit.
Shaded catalogue numbers denote sizes which are less than the minimum
standard anchor length for Strength Design.
The published size includes the diameter and length of the anchor measured
from under the head.
Wedge-Bolt+ is marked with a blue tip and must be installed with a matched
tolerance Wedge-bit.
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Canada: (905) 673-7295 or (514) 631-4216
g
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16
®
Wedge-Bolt +
PRODUCT INFORMATION
Wedge-bits
Cat.
No.
Wedge-bit Description
Usable
Length
Tube Carton
Qty.
Qty.
01312 SDS 1/4" x 4"
2”
1
250
01314 SDS 1/4" x 6"
4”
1
100
01316 SDS 3/8" x 6"
4”
1
200
01318 SDS 3/8" x 8"
6”
1
100
01319 SDS 3/8" x 18"
16”
1
50
01332 SDS 3/8" x 12"
10”
1
50
01320 SDS 1/2" x 6"
4”
1
150
01322 SDS 1/2" x 10"
8”
1
50
01334 SDS 1/2" x 12"
10”
1
50
01335 SDS 1/2" x 18"
16”
1
50
01324 SDS 5/8" x 8"
6”
1
75
01326 SDS 5/8" x 12"
10”
1
75
01336 SDS 5/8" x 18"
16”
1
50
01328 SDS 3/4" x 8"
6”
1
100
01330 SDS 3/4" x 12"
10”
1
50
01340 Spline 1/2" x 13"
8”
1
20
01342 Spline 1/2" x 16"
11”
1
-
01344 Spline 5/8" x 13"
8”
1
20
01348 Spline 3/4" x 13"
8”
1
20
01354 SDS-Max 1/2" x 13"
8”
1
20
01356 SDS-Max 5/8" x 13"
8”
1
20
20
01358 SDS-Max 3/4" x 13"
8”
1
01370 HD Straight Shank 1/4" x 4"
2-1/2”
1
100
01372 HD Straight Shank 1/4" x 6"
4”
1
-
01380 HD Straight Shank 3/8" x 6"
4”
1
-
01384 HD Straight Shank 3/8" x 13"
11”
1
-
01390 HD Straight Shank 1/2" x 6"
4”
1
-
01394 HD Straight Shank 1/2" x 13"
11”
1
50
01396 HD Straight Shank 5/8" x 13"
11”
1
-
11”
1
-
01397 HD Straight Shank 3/4" x 13"
Installation Accessories
Cat. No.
08280
Box
Qty.
Description
Hand pump / dust blower
1
© 2011 Powers Fasteners, Inc. All Rights Reserved. Wedge-Bolt+ is a Trademark of Powers Fasteners, Inc. For the most current product information please visit www.powers.com.
17
www.powers.com
Canada: (905) 673-7295 or (514) 631-4216
g
Powers USA: (800) 524-3244 or (914) 235-6300

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